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EP 0 769 105 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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04.08.1999 Bulletin 1999/31 |
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Date of filing: 24.09.1993 |
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International Patent Classification (IPC)6: F04D 29/42 |
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International application number: |
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PCT/SE9300/772 |
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International publication number: |
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WO 9408/144 (14.04.1994 Gazette 1994/09) |
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INLET BELL FOR CENTRIFUGAL FANS
EINLASSTRICHTER FüR KREISELLüFTER
CLOCHE D'ENTREE POUR VENTILATEURS CENTRIFUGES
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Designated Contracting States: |
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BE DE DK ES FR GB IT SE |
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Priority: |
01.10.1992 SE 9202850
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Date of publication of application: |
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23.04.1997 Bulletin 1997/17 |
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Proprietor: ABB FLÄKT AB |
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S-120 86 Stockholm (SE) |
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Inventor: |
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- HUGBART, Jean-Paul
F-71150 Rully (FR)
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Representative: Dahlstrand, Björn et al |
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FLÄKT AB
Patent Department
Box 81 001 104 81 Stockholm 104 81 Stockholm (SE) |
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References cited: :
DE-A- 4 020 236 GB-A- 2 017 823
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DE-A- 4 023 724 US-A- 1 612 568
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
[0001] The present invention refers to a novel inlet bell for centrifugal fans having an
impeller with a cover plate with a circular inlet opening, the inlet bell opening
into the cover plate with an intervening gap for recirculated air.
Prior art
[0002] Many shapes have already been designed and used for inlet bells of centrifugal fans.
Those shapes are designed either for good performances of the fan or for minimum cost.
[0003] For obtaining a good performance prior art inlet bells have been made very smooth
by manufacturing the pieces using spinning technique. This makes the inlet bells very
expensive. In Fig. 1, and also in the patent specification DE 4023724 A1, an inlet
bell of this kind is shown, with an outlet end manufactured using spinning technique,
opening into the impeller of a centrifugal fan.
[0004] Where these high costs are not accepted, simple constructions with an inlet bell
in the form of a cylinder, as in fig. 2, or as a cone, as in fig. 3 and as shown in
the patent specification GB 2017823 A, have been used with a resulting poor performance.
This is due to undesirable eddies formed in the recirculation area adjacent the inlet
of the impeller coverplate.
[0005] It has also been prior known to use inlet bells which are composed of a combination
of a cone and a cylinder such that a conical inlet part of the inlet bell is connected
at its outlet end to a cylindrical mouthpiece opening into the impeller of the centrifugal
fan. For example, such inlet bells are shown in the patent specifications US 1,612,568
and DE 4020236 A1. However, also with this kind of inlet bells, undesired eddies will
appear in the recirculation area adjacent the inlet of the impeller coverplate.
Brief description of the invention.
[0006] The object of the invention is to provide an inlet bell with a good performance and
at the same time a low manufacturing cost.
[0007] This is accomplished with the inlet bell according to the invention, which is characterized
in that the inlet bell is provided with a conical inlet part, tapering towards the
impeller, and a mouthpiece connected to the inlet part, and in that a circular flow
guide means is arranged at the intersection between the inlet part and the mouthpiece
of the inlet bell.
[0008] With this arrangement according to the invention a fairly good performance is achieved
at a very reasonable manufacturing cost for the inlet bell. The object of the flow
guide means is to obtain a separation of the flow from the inlet part of the bell
with as small a disturbance of the flow as possible.
[0009] The flow guide means could be realized in several different ways.
[0010] According to a first embodiment of the invention the flow guide means is a protruding
lip formed inside the mouthpiece by the tapering end of the inlet cone, which is partly
inserted into the mouthpiece.
[0011] The performance may be further enhanced by providing a chamfered or rounded edge
of the protruding lip, and/or forming the lip with a small curvature at the edge.
With this arrangement the point where the flow separates from the surface is fixed.
The costs for the chamfering or rounding the edge and the forming of a small curvature
on the edge of a cylinder or cone is very low and easily done.
[0012] According to a preferred embodiment the conical inlet part has a cone angle α of
between 25° and 50° in order to give the desired airflow into the fan.
[0013] According to a further embodiment the mouthpiece has the form of a cylinder. Preferably
the ratio between the diameter of the circular flow guide means and the mouthpiece
diameter d/D (see fig. 5) lies between 0,8 and 1, and the ratio between the length
of the mouthpiece 1 and the mouth piece diameter D between 0,1 and 0,28.
[0014] According to another embodiment of the invention the mouthpiece has a conical outwardly
tapering form, the flow guide means being a lip formed inside the mouthpiece by the
tapered end of the inlet part, which is partly inserted into the mouthpiece.
[0015] According to still another embodiment of the invention the mouthpiece has a conical
outwardly tapering form, the flow guide means being the edge formed between the two
conical parts secured to each other at their respective narrow ends, the angle (β)
being at least 230°.
[0016] One advantage of the conical mouthpiece is that it provides a low resistance to the
recirculating flow entering through the gap between the inlet mouthpiece and the impeller
coverplate. This recirculating flow maintains pressure stability of the fan and can
increase the pressure.
[0017] As in the case of the lip, the outlet edge of the mouthpiece can be chamfered or
rounded and/or might have a small curvature in order to further enhance the flow characteristics
and to fix the point where the flow separates from the surface.
Brief description of the drawings.
[0018] The invention will be explained more in detail in the following description of embodiments
of the invention illustrated in the accompanying drawings, in which
Figs. 1 - 3 are schematic cross sectional views of prior art inlet bells, discussed
in the introductory part of the description,
Fig. 4 is a schematic cross sectional view of one embodiment of the inlet bell according
to the invention, also showing part of the inlet bell in an enlarged scale,
Fig. 5 is a view corresponding to Fig. 4 showing important characteristic dimensions
of the inlet bell,
Fig. 6 is a schematic cross sectional view of a second embodiment of the inlet bell
according to the invention,
Figs. 6a and 6b showing part of the inlet bell in two different configurations in
an enlarged scale,
Figs. 7a and 7b are fragmentary views showing two different embodiments of the flow
guide means, and
Figs. 8a, 8b and 8c are fragmentary views showing different configurations of the
flow guide means and the outlet end of the mouthpiece.
Description of preferred embodiments of the invention
[0019] In Fig. 1 a prior art type inlet bell 1 is shown with a smooth rounded outlet part
2 opening into a coverplate 3 of the impeller 4. This results in a very good performance
with undisturbed flow indicated with arrows F
1, but, as discussed above, this part will be quite expensive.
[0020] In Fig. 2 the inlet bell 5 is cylindrical, which is a very inexpensive solution,
but the performance is poor, as illustrated with eddies F
2 formed along the inside wall of the coverplate 6 of the impeller 7. The same result
is obtained with a conical inlet bell 8 opening into the coverplate 9 of the impeller
10 as illustrated with arrows F
3 in Fig. 3.
[0021] In fig. 4, a first embodiment of the invention is shown. The inlet bell 11 has a
conical inlet 12 and a cylindrical mouthpiece 13, which opens into a coverplate 14
of the impeller 15. The conical inlet 12 protrudes into the mouthpiece 13 and the
two parts are welded together or combined in any other suitable way. The part of the
inlet cone 12 protruding into the mouthpiece forms a lip 16 acting as a flow guide
means. According to the enlarged view in fig. 4 of the lip and the adjacent parts
of the inlet cone and the mouthpiece, the edge 17 of the lip is chamfered as is also
the edge 18 of the mouthpiece. With this arrangement the point where the flow separates
from the surface is fixed. The flow is illustrated with arrows F
4, showing that eddies will form downstream the flow separation point. The main flow
will pass over these eddies substantially undisturbed, resulting in a good performance.
The length of the lip is a function of flow velocity and may be determined during
model tests for optimum performance. Critical dimensions will be discussed more in
detail in connection with the description of fig. 5.
[0022] In Fig. 5, the important geometrical dimensions are inserted. The cone angle a of
the conical inlet should be kept within the interval 25° < α < 50°. The diameter of
the flow guide means, i.e. the lip 16, which is the diameter of the smaller opening
of the conical inlet "d" should be less or equal to the diameter "D" of the cylinder
acting as the mouthpiece of the inlet bell, and preferably the ratio d/D should be
kept within the interval 0,8 - 1. Finally, the length "1" of the cylinder should stand
in a relation to the diameter "D" of the cylinder such that 0,1 < 1/D < 0,28.
[0023] In Fig. 6 another embodiment of the invention is shown. The inlet bell 20 comprises
a conical inlet 21 getting narrower in the direction of the flow and a conical mouthpiece
22 getting wider in said direction, which parts are welded or otherwise connected
to each other with a lip 23 formed as according to the Fig. 4 embodiment, or an edge
23b, see Fig. 6b. With a cone angle between 25° and 50° for each of said two conical
parts, the angle β between the walls of the two conical parts, see Fig. 6a, will be
at least 230° which is sufficient for the separation of the flow from the surface
at the connection point between the two parts, and the edge 23b formed will act as
the flow guide means. Hence there need not be a protruding lip. The angle β is illustrated
in fig. 6a and the embodiment without a protruding lip is illustrated in fig. 6b.
[0024] In the embodiment according to fig. 6 the conical mouthpiece 22 gives the advantage
of a low resistance to the recirculating flow F
I in the recirculation area "I" between the inlet mouthpiece 22 and the inner part
of the coverplate 19 of the impeller 24. This recirculating flow maintains pressure
stability of the fan and can increase the pressure. This embodiment also results in
a good performance, as discussed above, and which is shown with arrows F
6 illustrating the flow.
[0025] As is discussed above, the configuration of the different parts of the inlet bell
according to the invention can be varied for obtaining the best possible performance
at a low manufacturing cost.
[0026] As an example, in fig. 7a wherein part of a protruding lip 25 is shown, the outer
edge 26 is chamfered on one side and according to fig. 7b the edge 27 is rounded.
These two alternatives will give substantially the same effect.
[0027] In fig. 8a, a protruding lip 28 is shown, having a small curvature, which is realized
easily and cheaply by widening the narrow part of the inlet cone. In fig. 8b a protruding
lip 29 is shown being straight while the outer edge 30 of the cylindrical mouthpiece
31 has a small curvature. This will amplify the pressure stabilising effect in the
recirculation area "I" by improving the flow characteristics for the recirculation
air as well as the air coming through the inlet bell according to the invention. In
fig. 8c an embodiment, in which the protruding lip 28 having a small curvature and
the edge of the mouthpiece 30 having a small curvature, is illustrated. These embodiments
can also be used in connection with a conical mouthpiece.
1. Inlet bell for centrifugal fans having an impeller (15,24) with a cover plate (14,19),
the inlet bell opening into the cover plate with an intervening gap (I) for recirculation
air, the inlet bell (11,20) being provided with a conical inlet part (12,21), tapering
towards the impeller (15,24), and a mouthpiece (13,22) connected to the inlet part,
characterized by a circular lip (16,23) formed inside the mouthpiece (13,22) by the tapered end of
the inlet part, which is partly inserted into the mouthpiece, acting as a flow guide
means (16,23), designed to bring about separation of the flow from the inlet part
of the bell with a minimal disturbance of the flow, the lip (16, 23) being arranged
at the intersection between the inlet part and the mouthpiece of the inlet bell.
2. Inlet bell according to claim 1, characterized in that the lip (16) is chamfered (17,26) or rounded (27) on one side in order to enhance
the release performance of the lip.
3. Inlet bell according to claim 1 or 2, characterized in that the lip terminates with a small curvature (28) in the direction of the flow.
4. Inlet bell according to any of claims 1 - 3, characterized in that the mouthpiece (22) has a conical form opening up towards its outlet end, the
lip (23) being formed inside the mouthpiece by the tapered end of the inlet part (21),
which is partly inserted into the mouthpiece (22).
5. Inlet bell according to any of claims 1 - 4, characterized in that the edge of the mouthpiece (13,22) is chamfered or rounded on one side.
6. Inlet bell according to any of claims 1 - 5, characterized in that the edge of the mouthpiece terminates with a small curvature (30).
7. Inlet bell for centrifugal fans having an impeller (15,24) with a cover plate (14,19),
the inlet bell opening into the cover plate with an intervening gap (I) for recirculation
air, the inlet bell (11,20) being provided with a conical inlet part (12,21), tapering
towards the impeller (15,24), and a mouthpiece (22) connected to the inlet part, characterized in that the mouthpiece (22) has a conical form opening up towards its outlet end, and
in that it comprises a flow guide means being the edge (23b) formed between the mouthpiece
(22) and the inlet part (21) secured to each other at their resp. narrow ends, the
angle (β) between the walls of said two parts being at least 230°, the edge (23b)
bringing about separation of the flow from the inlet part of the bell with a minimal
disturbance of the flow.
8. Inlet bell according to claim 7, characterized in that the edge of the mouthpiece (13,22) is chamfered or rounded on one side.
9. Inlet bell according to any of claims 7 or 8, characterized in that the edge of the mouthpiece terminates with a small curvature (30).
1. Einlaßtrichter für Zentrifugalgebläse, die ein Gebläserad (15, 24) mit einer Deckelplatte
(14, 19) aufweisen, wobei sich der Einlaßtrichter in die Deckelplatte mit einem dazwischen
angeordneten Spalt (I) für Umwälzluft öffnet, der Einlaßtrichter (11, 20) mit einem
konischen Einlaßteil (12, 21) versehen ist, welches sich zum Gebläserad (15, 24) hin
verjüngt, und mit einem mit dem Einlaßteil verbundenen Mundstück (13, 22),
gekennzeichnet durch einen kreisförmigen Rand (16, 23), der innerhalb des Mundstücks (13, 22) durch
das verjüngte Ende des Einlaßteils gebildet wird, welches zum Teil in das Mundstück
eingeführt ist, und der als Flußführungsvorrichtung (16, 23) dient, die so ausgelegt
ist, daß sie die Ablösung des Flusses von dem Einlaßteil des Trichters unter minimaler
Beeinträchtigung des Flusses hervorbringt, wobei der Rand (16, 23) an dem Schnittpunkt
zwischen dem Einlaßteil und dem Mundstück des Einlaßtrichters angeordnet ist.
2. Einlaßtrichter nach Anspruch 1,
dadurch gekennzeichnet, daß der Rand (16) abgeschrägt (17, 26) oder abgerundet (27) an einer Seite ist, um
die Ablöseeigenschaften des Randes zu verbessern.
3. Einlaßtrichter nach Anspruch 1 oder 2,
dadurch gekennzeichnet, daß der Rand mit einer kleinen Krümmung (28) in der Richtung des Flusses endet.
4. Einlaßtrichter nach einem der Ansprüche 1 bis 3,
dadurch gekennzeichnet, daß das Mundstück (22) kegelförmig ist, und sich zu seinem Auslaßende hin öffnet,
wobei der Rand (23) innerhalb des Mundstücks durch das verjüngte Ende des Einlaßteils
(21) gebildet wird, welches zum Teil in das Mundstück (22) eingeführt ist.
5. Einlaßtrichter nach einem der Ansprüche 1 bis 4,
dadurch gekennzeichnet, daß die Kante des Mundstücks (13, 22) an einer Seite abgeschrägt oder abgerundet
ist.
6. Einlaßtrichter nach einem der Ansprüche 1 bis 5,
dadurch gekennzeichnet, daß die Kante des Mundstücks mit einer kleinen Krümmung (30) endet.
7. Einlaßtrichter für Zentrifugalgebläse, die ein Gebläserad (15, 24) mit einer Deckelplatte
(14, 19) aufweisen, wobei sich der Einlaßtrichter in die Deckelplatte mit einem dazwischenliegenden
Spalt (I) für Umwälzluft hin öffnet, der Einlaßtrichter (11, 20) mit einem konischen
Einlaßteil (12, 21) versehen ist, welches sich zum Gebläserad (15, 24) hin verjüngt,
und mit einem an das Einlaßteil angeschlossenen Mundstück (22),
dadurch gekennzeichnet, daß das Mundstück (22) kegelförmig ist, und sich zu seinem Auslaßende hin öffnet,
und daß es eine Flußführungsvorrichtung aufweist, welche die Kante (23b) darstellt,
die zwischen dem Mundstück (22) und dem Einlaßteil (21) gebildet wird, die aneinander
an ihren jeweiligen verengten Enden befestigt sind, wobei der Winkel (β) zwischen
den Enden dieser beiden Teile zumindest 230° beträgt, und die Kante (23b) die Ablösung
des Flusses von dem Einlaßteil des Trichters unter minimaler Beeinträchtigung des
Flusses hervorbringt.
8. Einlaßtrichter nach Anspruch 7,
dadurch gekennzeichnet, daß die Kante des Mundstücks (13, 22) an einer Seite abgeschrägt oder abgerundet
ist.
9. Einlaßtrichter nach einem der Ansprüche 7 oder 8,
dadurch gekennzeichnet, daß die Kante des Mundstücks mit einer kleinen Krümmung (30) endet.
1. Cloche d'entrée pour ventilateurs centrifuges qui possèdent une roue (15, 24) avec
une plaque de recouvrement (14, 19), la cloche d'entrée débouchant dans la plaque
de recouvrement en ménageant une fente intermédiaire (I) pour l'air de recyclage,
la cloche d'entrée (11, 20) étant pourvue d'une partie d'entrée conique (12, 21),
à pente vers la roue (15, 24), et d'une bouche (13, 22) raccordée à la partie d'entrée,
caractérisée par une lèvre circulaire (16, 23) formée à l'intérieur de la bouche (13,
22) par l'extrémité à pente de la partie d'entrée, qui est partiellement engagée dans
la bouche, qui joue le rôle d'un moyen de guidage de l'écoulement (16, 23), conçue
pour que l'écoulement se sépare de la partie d'entrée de la cloche avec une perturbation
minimale de l'écoulement, la lèvre (16, 23) étant agencée à l'intersection entre la
partie d'entrée et la bouche de la cloche d'entrée.
2. Cloche d'entrée selon la revendication 1, caractérisée en ce que la lèvre (16) est
chanfreinée (17, 26) ou arrondie (27) sur un côté pour renforcer les performances
de séparation de la lèvre.
3. Cloche d'entrée selon la revendication 1 ou 2, caractérisée en ce que la lèvre se
termine par une petite courbure (28) dans le sens de l'écoulement.
4. Cloche d'entrée selon l'une des revendications 1 à 3, caractérisée en ce que la bouche
(22) possède une forme conique qui s'élargit vers son extrémité de sortie, la lèvre
(23) étant formée à l'intérieur de la bouche par l'extrémité à pente de la partie
d'entrée (21), qui est partiellement engagée dans la bouche (22).
5. Cloche d'entrée selon l'une des revendications 1 à 4, caractérisée en ce que le bord
de la bouche (13, 22) est chanfreiné ou arrondi sur un côté.
6. Cloche d'entrée selon l'une des revendications 1 à 5, caractérisée en ce que le bord
de la bouche se termine par une petite courbure (30).
7. Cloche d'entrée pour ventilateur centrifuge possédant une roue (15, 24) munie d'une
plaque de recouvrement (14, 19), la cloche d'entrée débouchant dans la plaque de recouvrement
en ménageant une fente intermédiaire (1) pour l'air de recyclage, la cloche d'entrée
(11, 20) étant pourvue d'une partie d'entrée conique (12, 21), à pente vers la roue
(15, 24), et d'une bouche (22) raccordée à la partie d'entrée, caractérisée en ce
que la bouche (22) possède une forme conique qui s'élargit vers son extrémité de sortie,
et en ce qu'elle comprend un moyen de guidage de l'écoulement qui est l'arête (23b)
formée entre la bouche (22) et la partie d'entrée (21) qui sont fixées l'une à l'autre
à leurs extrémités étroites respectives, l'angle (β) entre les parois desdites deux
parties étant au moins de 230°, l'arête (23b) ayant pour effet que l'écoulement se
sépare de la partie d'entrée de la cloche avec une perturbation minimale de l'écoulement.
8. Cloche d'entrée selon la revendication 7, caractérisée en ce que le bord de la bouche
(13, 22) est chanfreiné ou arrondi sur un côté.
9. Cloche d'entrée selon l'une quelconque des revendications 7 ou 8, caractérisée en
ce que le bord de la bouche se termine par une petite courbure (30).